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Exact Penalty Function Based Constraint Relaxation Method for Optimal Power Flow Considering Wind Generation Uncertainty

机译:考虑风力发电不确定性的基于精确罚函数的约束松弛最优潮流方法

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摘要

This letter presents a constraint relaxation optimal power flow (OPF) model to tackle the issues when traditional OPF is infeasible under large variations such as wind generation output. In this model, the original hard constraints are relaxed into soft constraints and the objective function is adjusted for the cost of constraint violations. To guarantee the equivalence to the original OPF model when there are feasible solutions, an exact penalty function method is introduced to justify the selection of penalty factor of constraint violations. By solving an optimization problem, the lower bound of the proper penalty factor is obtained. The results of a 6-bus test system show that the proposed method achieves the same solution when the original OPF has feasible region, and an optimal solution can be obtained with minimum constraint violation when original OPF has no feasible region. Lastly, three large IEEE systems are tested to verify the effectiveness of proposed method.
机译:这封信提出了一个约束松弛最佳功率流(OPF)模型,以解决在风力发电输出等大变化下传统OPF不可行的问题。在此模型中,将原始的硬约束放宽为软约束,并针对违规成本进行调整。为了在可行的解决方案中保证与原始OPF模型的等价性,引入了精确的罚函数方法来证明约束违规的罚因子的选择是正确的。通过解决优化问题,获得适当惩罚因子的下限。 6总线测试系统的结果表明,当原始OPF具有可行区域时,该方法可以达到相同的解决方案;而当原始OPF没有可行区域时,可以以最小的约束冲突获得最优解。最后,对三个大型IEEE系统进行了测试,以验证所提出方法的有效性。

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